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BPGA- an ultra-fast pan-genome analysis pipeline

Scientific Reports · 2016 · Vol. 6(1) · pp. 24373–24373
Narendrakumar M. ChaudhariVinod K. GuptaChitra Dutta

Abstract

Recent advances in ultra-high-throughput sequencing technology and metagenomics have led to a paradigm shift in microbial genomics from few genome comparisons to large-scale pan-genome studies at different scales of phylogenetic resolution. Pan-genome studies provide a framework for estimating the genomic diversity of the dataset, determining core (conserved), accessory (dispensable) and unique (strain-specific) gene pool of a species, tracing horizontal gene-flux across strains and providing insight into species evolution. The existing pan genome software tools suffer from various limitations like limited datasets, difficult installation/requirements, inadequate functional features etc. Here we present an ultra-fast computational pipeline BPGA (Bacterial Pan Genome Analysis tool) with seven functional modules. In addition to the routine pan genome analyses, BPGA introduces a number of novel features for downstream analyses like core/pan/MLST (Multi Locus Sequence Typing) phylogeny, exclusive presence/absence of genes in specific strains, subset analysis, atypical G + C content analysis and KEGG &COG mapping of core, accessory and unique genes. Other notable features include minimum running prerequisites, freedom to select the gene clustering method, ultra-fast execution, user friendly command line interface and high-quality graphics outputs. The performance of BPGA has been evaluated using a dataset of complete genome sequences of 28 Streptococcus pyogenes strains.

Genomics and Phylogenetic StudiesRNA and protein synthesis mechanismsProbiotics and Fermented FoodsGenomeComputational biologyBiologyGenomicsComparative genomicsMetagenomicsReference genomePhylogenetic treeWhole genome sequencingSequence assembly

MeSH terms

PhylogenySoftwareStreptococcus pyogenesGenome, BacterialHigh-Throughput Nucleotide Sequencing
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